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Lattice-Boltzmann hydrodynamics on parallel systems

机译:并行系统上的Lattice-Boltzmann流体力学

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Realistic lattice-Boltzmann simulations often require large amounts of computational resources and are therefore executed on parallel systems. Generally, parallelization is based on one- and two-dimensional decomposition of the computational grid in equal subvolumes, and load balancing is completely ignored for simplicity. Besides reviewing the existing parallelization strategies we report here a new approach based on the Orthogonal Recursive Bisection (ORB) method. To illustrate the different decomposition methods, two realistic applications were simulated, namely fluid flow in random fibre networks and flow in a centrifugal elutriation chamber. For heterogeneously distributed workloads, the ORB method is found to be 12 to 60% more efficient compared to traditional parallelization strategies. It is shown that high parallel efficiencies can be obtained for both homogeneously and heterogeneously distributed workloads, thus supporting efficient simulations of a variety of realistic systems.
机译:现实的格子-玻尔兹曼模拟通常需要大量的计算资源,因此需要在并行系统上执行。通常,并行化基于等量的计算网格的一维和二维分解,并且为简单起见,完全忽略了负载平衡。除了回顾现有的并行化策略外,我们在此还报告了一种基于正交递归对分(ORB)方法的新方法。为了说明不同的分解方法,模拟了两个实际应用,即随机纤维网络中的流体流动和离心淘析室中的流体流动。对于异构分布的工作负载,与传统的并行化策略相比,ORB方法的效率提高了12%到60%。结果表明,对于均匀分布和异构分布的工作负载,都可以获得很高的并行效率,从而支持各种现实系统的高效仿真。

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